Observing Micro Black Hole Dark Matter
Manuel Ettengruber, Florian Kühnel
hep-ph, astro-ph.HE, gr-qc, hep-th
Submitted: 2026-08-24
Updated: 2026-08-25
License: http://creativecommons.org/licenses/by/4.0/
The gist: Primordial micro black holes can constitute dark matter if short-distance gravity is modified by extra dimensions or a large number of species and if the memory-burden effect sufficiently suppresses
Terminology
Abstract
Primordial micro black holes can constitute dark matter if short-distance gravity is modified by extra dimensions or a large number of species and if the memory-burden effect sufficiently suppresses Hawking evaporation. The resulting black holes in the transition regime differ from their four-dimensional Einsteinian counterparts through their mass--radius relation, temperature, entropy, and lifetime, which can render even very light objects cosmologically stable. The most promising observational consequences of such micro black holes dark matter are analysed. Neutron star survival yields the most robust constraints, while a narrow region of parameter space can simultaneously remain viable and address the missing-pulsar problem in the Galactic center. Diffuse evaporation signals in neutrino telescopes are found to be relevant mainly in extra-dimensional scenarios, whereas in generic species models, visible emission is strongly suppressed by evaporation into dark sectors. Merger-induced evaporation bursts can provide an additional probe in extra-dimensional realisations if the post-merger remnant briefly returns to the semiclassical phase. Overall, micro black holes dark matter remains phenomenologically viable in constrained regions, with neutron stars, neutrino telescopes, and merger signatures providing complementary tests.
Sources
- Primordial Black Holes as Dark Matter
- Primordial Black Holes as Dark Matter: Recent Developments
- Primordial Black Holes
- Black Holes and Large N Species Solution to the Hierarchy Problem
- Black Hole Bound on the Number of Species and Quantum Gravity at LHC
- The Hierarchy Problem and New Dimensions at a Millimeter
- Phenomenology, Astrophysics and Cosmology of Theories with Sub-Millimeter Dimensions and TeV Scale Quantum Gravity
- New Dimensions at a Millimeter to a Fermi and Superstrings at a TeV
- Phenomenology of 10^32 Dark Sectors
- Nnaturalness
- The Weak Scale as a Trigger
- Neutrino Masses from Large Extra Dimensions
- Neutrino Physics in TeV Scale Gravity Theories
- Neutrino Masses and Phenomenology in Nnaturalness
- Probing Large Extra Dimensions with Neutrinos
- Testing for Large Extra Dimensions with Neutrino Oscillations
- Bulk Neutrinos as an Alternative Cause of the Gallium and Reactor Anti-neutrino Anomalies
- Kinematical Test of Large Extra Dimension in Beta Decay Experiments
- Constraining new physics scenarios in neutrino oscillations from Daya Bay data
- Signatures of Extra Dimensional Sterile Neutrinos
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